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手掌和足底出汗:生理和临床意义。

Sweating on the palm and sole: physiological and clinical relevance.

机构信息

Department of Neurology, Chiba University School of Medicine, 1-8-1 Inohana, Chuo-ku, Chiba, 260-8670, Japan,

出版信息

Clin Auton Res. 2015 Jun;25(3):153-9. doi: 10.1007/s10286-015-0282-1. Epub 2015 Apr 17.

Abstract

In mammals, sweating is a multifunctional response that aids in locomotion, thermal regulation, self-protection, and communication of psychological state. Humans possess three types of sweat glands (apocrine, eccrine, and apoeccrine) that are differentially distributed on the body surface and make unique contributions to these distinct functions of the sweating response. In humans, eccrine glands, which are widely distributed on hairy skin, play an important role in thermoregulation. They are also found on the glabrous skin of the palm and sole, where they are not usually activated by heat, but rather by deep respiration, mental stress, and local tactile stimulation. Sweating on the palm and sole, so-called "emotional sweating", acts to prevent slippage while grasping or performing a delicate task using the fingertips. Although the central pathways of emotional sweating are not yet elucidated in detail, it is thought that the amygdala, cingulate cortex, and medulla participate via efferent fibers that descend through the spinal cord and connect to preganglionic sympathetic neurons in the nucleus intermediolateralis. The limbic system, including the amygdala and cingulate cortex, is critical for emotional processing and many cognitive functions. Thus, measurement of sweat output on the palm or sole is useful for evaluating sympathetic function and limbic activity in autonomic and psychiatric disorders.

摘要

在哺乳动物中,出汗是一种多功能反应,有助于运动、体温调节、自我保护以及心理状态的交流。人类拥有三种类型的汗腺(顶泌汗腺、小汗腺和顶泌小汗腺),它们在体表的分布不同,对出汗反应的这些不同功能做出独特的贡献。在人类中,广泛分布于有毛皮肤的小汗腺在体温调节中起着重要作用。它们也存在于手掌和脚底的无毛发皮肤中,在这些部位,它们通常不是被热量激活,而是被深呼吸、精神压力和局部触觉刺激激活。手掌和脚底的出汗,即所谓的“情绪性出汗”,有助于防止在使用指尖抓握或进行精细任务时打滑。尽管情绪性出汗的中枢通路尚未详细阐明,但据认为杏仁核、扣带回皮层和延髓通过下行到脊髓的传出纤维参与,并与中间外侧核的节前交感神经元相连。包括杏仁核和扣带回皮层在内的边缘系统对于情绪处理和许多认知功能至关重要。因此,测量手掌或脚底的汗液分泌量对于评估自主神经和精神障碍中的交感神经功能和边缘活动是有用的。

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